I believe you balance a bike in three ways. The relative importance of each strategy depends on how fast the bike is moving.
1. If the bike is stationary the only thing you can possibly do is to shift bits of your body (and/or bike) around to keep your centre of mass over the line between the contact points of the wheels.
2. When the bike is moving you can re-establish equilibrium by steering in the direction of fall. At low speeds this simply works by moving the support line back beneath your centre of mass. It's easy to see this happening when you stand on the pedals to climb a hill: the wheels track from side to side to compensate for shifts of the upper body.
3. Centrifugal force caused by the turn provides a balancing force to gravity. The gravitational force, acting in a vertical plane, and the centrifugal force, acting in a horizontal plane, resolve into a force acting through the support line. This is why you bank the bike when you take a corner. As long as your tyres don't slide sideways the result is stable.
I don't think gyroscopic effects are significant. Bikes (or scooters) with tiny or very light wheels aren't noticeably harder to balance than those with big heavy wheels. I've read that the forces resulting from gyroscopic action of a spinning bike wheel are trivial compared to the mass of the bike and rider. And it's not clear how the gyroscopic forces are supposed to keep the bike balanced. Imagine yourself trying to stand on a board on top of a bowling ball - do you think it would be any easier if you had a couple of spinning wheels to hold?
The shape of the forks, or rather the position of the front wheel with respect to the axis of the headset, probably makes steering harder or easier, and this is why it affects balance.
(Apologies to any physicists for the mangled concepts above, but I think the ideas are fundamentally correct. It seems to work for me, as I haven't fallen off for a while.)
Chris (definitely not a physicist) Walker
Quoted post said:Originally posted by Jack Howard
In message <[email hidden]>, James Hodson
<[email hidden]> writes
Quoted message said:On Tue, 5 Aug 2003 19:30:28 +0100, "Clive George"
Quoted message said:Quoted message said:"James Hodson" <[email hidden]> wrote in message
Quoted message said:Quoted message said:Quoted message said:Don't bicycles stay upright because of the gyroscopic action on their wheels. (Yes, I know
that's extremly badly put.) Calling all physicists.
Quoted message said:Quoted message said:Nope, not gyroscopes, more like hockey sticks or golf clubs - balancing one of these on the palm
of your hand is the same problem as balancing a bike.
Quoted message said:OK, Clive. Next question: Why is balancing easier on a moving bike than on a stationary,
track-standing one?
You balance a moving bike by steering it - first you go over a bit one way, then over a bit the
other way, etc. You can't do that when stationary.
--
- Jack Howard, Systems Development Engineer, Firstnet Services Limited
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